1.
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On the use of ferroelectric material in the detection of dark matter axions
/ Barceló, J.M. García (Cartagena Politecnica U.) ; Melcón, A. Álvarez (Cartagena Politecnica U.) ; Cuendis, S. Arguedas (ICC, Barcelona U.) ; Díaz-Morcillo, A. (Cartagena Politecnica U.) ; Gimeno, B. (Valencia U., IFIC) ; Kanareykin, A. (Euclid Techlabs, Solon) ; Lozano-Guerrero, A.J. (Cartagena Politecnica U.) ; Navarro, P. (Cartagena Politecnica U.) ; Wuensch, W. (CERN)
Tuning is an essential requirement for the search of dark matter axions employing haloscopes since its mass is not known yet to the scientific community. At the present day, most haloscope tuning systems are based on mechanical devices which can lead to failures due to the complexity of the environment in which they are used. [...]
arXiv:2204.11919.-
2023-03-29 - 13 p.
- Published in : IEEE Access 11 (2023) 30360 - 30372
Fulltext: 2204.11919 - PDF; Publication - PDF;
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2.
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Ferro-Electric Fast Reactive Tuner Applications for SRF Cavities
/ Shipman, Nicholas C (CERN) ; Ben-Zvi, Ilan (BNL, NSLS) ; Burt, Graeme (Cockcroft Inst. Accel. Sci. Tech.) ; Castilla, Alejandro (Cockcroft Inst. Accel. Sci. Tech. ; CERN) ; Coly, Marcel R (CERN) ; Gerigk, Frank (CERN) ; Jing, Chunguang J (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Macpherson, Alick (CERN) ; Stapley, Niall (CERN) et al.
A Ferro-Electric fast Reactive Tuner (FE-FRT) is a novel type of RF cavity tuner containing a low loss ferroelectric material. FE-FRTs have no moving parts and allow cavity frequencies to be changed extremely quickly (on the timescale of 100s of ns or less). [...]
Geneva : JACoW, 2021 - 6 p.
- Published in : JACoW IPAC 2021 (2021) 1305-1310
Fulltext: PDF;
In : 12th International Particle Accelerator Conference (IPAC 2021), Online, 24 - 28 May 2021, pp.1305-1310
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3.
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A Ferroelectric Fast Reactive Tuner (FE-FRT) to Combat Microphonics
/ Shipman, Nicholas (CERN) ; Bastard, Jeremy (CERN) ; Ben-Zvi, Ilan (Brookhaven) ; Burt, Graeme (Lancaster U.) ; Castilla, Alejandro (Lancaster U.) ; Coly, Marcel (CERN) ; Gerigk, Frank (CERN) ; Jing, Chunguang (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Macpherson, Alick (CERN) et al.
A prototype Fast Reactive Tuner (FRT) for superconducting cavities has been developed, which allows the frequency to be controlled by application of a potential difference across a newly developed ultra-low loss ferro-electric material residing within the tuner. The tuner operates at room temperature, outside of the cryostat and coupled to the cavity via an antenna and co-axial cable. [...]
2020 - 6 p.
- Published in : 10.18429/JACoW-ERL2019-TUCOZBS02
Fulltext: PDF;
In : 63rd ICFA Advanced Beam Dynamics Workshop on Energy Recovery Linacs, Berlin, Germany, 15 - 20 Sep 2019, pp.TUCOZBS02
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4.
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A Ferroelectric Fast Reactive Tuner for Superconducting Cavities
/ Shipman, Nicholas (CERN) ; Bastard, Jeremy (CERN) ; Ben-Zvi, Ilan (Brookhaven Natl. Lab.) ; Burt, Graeme (Lancaster U.) ; Castilla, Alejandro (Lancaster U.) ; Coly, Marcel (CERN) ; Gerigk, Frank (CERN) ; Jing, Chunguang (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Kazakov, Sergey (Fermilab) et al.
A prototype FerroElectric Fast Reactive Tuner (FE-FRT) for superconducting cavities has been developed, which allows the frequency to be controlled by application of a potential difference across a ferroelectric residing within the tuner. This technique has now become practically feasible due to the recent development of a new extremely low loss ferroelectric material. [...]
SRF2019.-
2019 - 8 p.
- Published in : 10.18429/JACoW-SRF2019-WETEB7
Fulltext: PDF;
In : 19th International Conference on RF Superconductivity, Dresden, Germany, 30 Jun - 05 Jul 2019, pp.783-790
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5.
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Towards an Advanced Linear International Collider
/ ALEGRO Collaboration
This document provides detailed information on the status of Advanced and Novel Accelerators techniques and describes the steps that need to be envisaged for their implementation in future accelerators, in particular for high energy physics applications. [...]
arXiv:1901.10370.
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2019 - 83.
Fulltext
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6.
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An X-band Dielectric-based Wakefield Power Extractor
/ Jing, Chunguang (Euclid Techlabs, Solon) ; Antipov, Sergey (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Schoessow, Paul (Euclid Techlabs, Solon) ; Conde, Manoel (Argonne) ; Gai, Wei (Argonne) ; Power, John (Argonne) ; Dolgashev, Valery (SLAC) ; Lewandowski, James (SLAC) ; Tantawi, Sami (SLAC) et al.
An X-band dielectric-based wakefield power extractor is under development to function as a high power rf source primarily for Two Beam Accelerator applications. A low surface electric field to gradient ratio and low fabrication cost are two main advantages of the dielectric-loaded accelerating/decelerating structure. [...]
2013 - 3 p.
- Published in : (2013) , pp. WEPFI090
Fulltext: PDF; External link: JACoW server
In : 4th International Particle Accelerator Conference, Shanghai, China, 12 - 17 May 2013, pp.WEPFI090
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7.
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Dielectric Collimators for Beam Delivery Systems
/ Schoessow, Paul (Euclid Techlabs, Solon) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Baturin, Stanislav (Svetlana-Electronpribor, St. Petersburg) ; Altmark, A (Svetlana-Electronpribor, St. Petersburg) ; Tomas-Garcia, R (CERN) ; Resta-Lopez, J (Valencia U., IFIC)
Wakefield generation by the collimation system is known to be a critical linear collider design issue. Optimization of the collimators represents a tradeoff between beam quality (halo reduction) and luminosity reduction. [...]
2012 - 8 p.
- Published in : Phys. Procedia 37 (2012) 2023-2030
Elsevier Open Access article: PDF;
In : 2nd International Conference on Technology and Instrumentation in Particle Physics, Chicago, IL, USA, 9 - 14 Jun 2011, pp.2023-2030
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8.
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Dielectric Collimators for Linear Collider Beam Delivery System
/ Kanareykin, A (Euclid Techlabs, Solon) ; Schoessow, P (Euclid Techlabs, Solon) ; Baturin, S (State Electrotech. U.) ; Tomás, R (CERN)
The current status of ILC and CLIC concepts require additional research on wakefield reduction in the collimator sections. New materials and new geometries have been considered recently*. [...]
2011
External link: Published version from JACoW
In : 2011 Particle Accelerator Conference, New York City, NY, USA, 28 Mar - 1 Apr 2011, pp.THP109
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9.
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Development of an X-Band Dielectric-Based Wakefield Power Extractor for Potential CLIC Applications
/ Jing, C -J (Euclid Techlabs, Solon) ; Antipov, S P (Euclid Techlabs, Solon) ; Kanareykin, A (Euclid Techlabs, Solon) ; Schoessow, P (Euclid Techlabs, Solon) ; Conde, M E (Argonne (main)) ; Gai, W (Argonne (main)) ; Power, J G (Argonne (main)) ; Syratchev, I (CERN)
In the past decade, tremendous efforts have been put into the development of the CLIC Power Extraction and Transfer Structure (PETS), and significant progress has been made. However, one concern remains the manufacturing cost of the PETS, particularly considering the quantities needed for a TeV machine. [...]
2011
External link: Published version from JACoW
In : 2011 Particle Accelerator Conference, New York City, NY, USA, 28 Mar - 1 Apr 2011, pp.MOP116
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10.
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Dielectric Collimators for Linear Collider Beam Delivery System
/ Tomas, Rogelio (CERN) ; Kanareykin, Alexei (Euclid Techlabs, Solon) ; Schoessow, Paul (Euclid Techlabs, Solon) ; Baturin, Stanislav (State Electrotech. U.)
In this paper, dielectric collimator concepts for the linear collider are described. Cylindrical and planar dielectric collimator designs for CLIC and ILC parameters are presented, and results of simulations to minimize the beam impedance are discussed [...]
2010
External link: Published version from JACoW
In : 1st International Particle Accelerator Conference, Kyoto, Japan, 23 - 28 May 2010, pp.WEPE100
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